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首页> 外文期刊>International Journal of Heat and Mass Transfer >Sudden or smooth transitions in porous media natural convection
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Sudden or smooth transitions in porous media natural convection

机译:多孔介质自然对流中的突然或平稳过渡

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In porous media isothermal flow a transition from the Darcy regime, via an inertia dominated regime, towards turbulence is anticipated. In porous medium natural convection the transition to turbulence follows a different route. The first transition from a motionless-conduction regime to steady natural convection is followed by a direct second transition to a non-steady (time dependent) and non-periodic regime (referred to as weak turbulent), prior to the amplitude of the convection reaching such large values as to involve inertial, non-Darcy effects. The latter is due to an additional non-linear interaction that appears in natural convection as a result of the coupling between the equations governing the fluid flow and the energy equation. The present paper deals with identifying whether the transitions are sudden or possibly smooth. The latter is accomplished by using a truncated Galerkin representation of the natural convection problem in a porous layer heated from below (an extended Darcy model) leading to the familiar Lorenz equations for the evolution of the convection amplitudes with time. Two different formulations (named the "original" and the "modified" systems) are being used in an anticipation to obtaining a smooth transition in the form of an imperfect bifurcation from the "modified" system formulation. The results show that the transition remains sudden and the accuracy of the "modified" system results is being tested in comparison with the "original" system showing a sufficiently high degree of accuracy.
机译:在多孔介质等温流中,可以预期从Darcy态通过惯性主导态向湍流过渡。在多孔介质自然对流中,向湍流的过渡遵循不同的路径。从对流不传导状态到稳定自然对流的第一次过渡,接着是在对流振幅达到之前,直接第二次过渡到非稳态(与时间有关)和非周期性状态(称为弱湍流)涉及惯性,非达西效应的较大值。后者是由于控制流体流动的方程和能量方程之间存在耦合,导致自然对流中出现了额外的非线性相互作用。本文致力于确定过渡是突然的还是可能的平稳。后者是通过使用从下方加热的多孔层中的自然对流问题的截断式Galerkin表示(扩展的Darcy模型)来实现的,从而得出了熟悉的Lorenz方程,以了解对流幅度随时间的演变。预期使用两种不同的配方(分别称为“原始”和“修改的”系统),以从“修改的”系统配方中获得不完美的分叉形式的平稳过渡。结果表明,过渡仍然是突然发生的,与“原始”系统相比,“改进”系统结果的准确性正在测试,后者显示出足够高的准确性。

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